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首页> 外文期刊>New Forests >Influence of age and planting density on the energy content of Eucalyptus benthamii, Eucalyptus dunnii and Eucalyptus grandis planted in Uruguay
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Influence of age and planting density on the energy content of Eucalyptus benthamii, Eucalyptus dunnii and Eucalyptus grandis planted in Uruguay

机译:年龄和种植密度对乌拉圭种植桉树果仁植物,桉树,桉树的能量含量

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摘要

According to some studies, the use of forest biomass for the generation of electric power and/or heat would result in a significant reduction in the emission of greenhouse gases. This would happen even in the case of soils substitution that currently have an agricultural use although its implementation would require more studies on the environmental impact that they could have in each particular case. In this study, the potential of electric power production is evaluated with several species of Eucalyptus planted in short rotation forestry systems. Three species were evaluated: E. benthamii, E. dunnii and E. grandis in four spacings: 3 x 1.5 m, 3 x 1 m, 3 x 0.75 m, 3 x 0.5 m, in two sites in the northern and western areas of Uruguay during a period of 76 and 75 months, respectively. During this period, the following parameters were evaluated: higher heating value, wood density, energy density and energy yield per hectare and per year. The results obtained show that the heating value changes slightly with the planting density and age. The average of higher heating values were 19,787 versus 19,454 J g(-1) and 19,867 versus 9909 J g(-1)for the planting densities of 2220 versus 6660 trees ha(-1) at Paysandu and Tacuarembo, respectively, at 76 months. Higher heating value increased from 19,665 to 19,745 J g(-1) at 18 months to 19,740 and 19,914 J g(-1) at 76 months for Paysandu and Tacuarembo, respectively. The wood density, depending on the site, is affected by age, species and planting density. On average, wood density increased (only at Paysandu) from 0.405 g cm(-3) at age 18 months to 0.497 g cm(-3) at age 76 months. There is a negative relationship between the heating value and the wood density. The energy yield is basically explained by the production of biomass. At Tacuarembo, a stronger relationship between energy production and planting density is obtained (1012 vs. 636 MW ha(-1) for 6660 and 2220 trees ha(-1), respectively) compared to the Paysandu site (1093 vs. 912 MW ha(-1) for 6660 and 2220 trees ha(-1), respectively). Harvest times are different in each site depending on the IMA values obtained.
机译:根据一些研究,使用森林生物量用于产生电力和/或热量的产生将导致温室气体排放的显着降低。这将发生这种情况,即使在土壤替代目前有农业用途,尽管其实施需要更多关于他们在每个特定案件中可能拥有的环境影响的研究。在这项研究中,用几种在短旋转林业系统中种植的桉树的电力产生的潜力。评估了三种物种:E. Benthamii,E. Dunnii和E. Grandis的四个间距:3 x 1.5米,3 x 1 m,3 x 0.75 m,3 x 0.5米,在北部和西部地区的两个地点乌拉圭分别为76和75个月。在此期间,评估以下参数:每公顷和每一公顷的加热值,木质密度,能量密度和能量产量更高。得到的结果表明,加热值随着种植密度和年龄而略微变化。加热值的平均值为19,787与19,454 j g(-1)和9909 j g(-1),分别在76个月内分别在Paysandu和tacuarembo(tacuarembo(-1)的种植密度。较高的加热值分别从19,665到19,745J克(-1)增加到19,745〜19,740〜19,740和19,9,914J克(-1),分别为薪酬和塔乌雷勒省的76个月。根据场地的木质密度受年龄,物种和种植密度的影响。平均而言,木质密度在18个月内为0.405克(-3)的木质密度增加至76个月的0.497克(-3)。加热值与木材密度之间存在负面关系。通过生产生物质的生产基本解释了能量产量。在Tacuarembo,与Paysandu位点相比,获得了能量生产和种植密度之间的更强的关系(1012与636 MW HA(-1),分别为6660和2220棵树(-1)(1093 Vs.912 MW HA) (-1)分别为6660和2220棵树HA(-1))。根据所获得的IMA值,每个站点的收获时间是不同的。

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